Galaxy gas flows inferred from a detailed, spatially resolved metal budget
arXiv:1503.06823 · doi:10.1093/mnras/stv2332
Abstract
We use the most extensive integral field spectroscopic map of a local galaxy, NGC 628, combined with gas and stellar mass surface density maps, to study the distribution of metals in this galaxy out to 3 effective radii (). At each galactocentric distance, we compute the metal budget and thus constrain the mass of metals lost. We find that in the disc about 50% of the metals have been lost throughout the lifetime of the galaxy. The fraction of metals lost is higher in the bulge (70%) and decreases towards the outer disc (). In contrast to studies based on the gas kinematics, which are only sensitive to ongoing outflow events, our metal budget analysis enables us to infer the average outflow rate during the galaxy lifetime. By using simple physically motivated models of chemical evolution we can fit the observed metal budget at most radii with an average outflow loading factor of order unity, thus clearly demonstrating the importance of outflows in the evolution of disc galaxies of this mass range (. The observed gas phase metallicity is higher than expected from the metal budget and suggests late-time accretion of enriched gas, likely raining onto the disc from the metal-enriched halo.
accepted by MNRAS. New appendix describing the assumptions, timescales and equilibrium states of different `bathtub' models
References in corpus (27)
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- Galactic chemical evolution: Carbon through Zinc
- Cosmological Simulations of Intergalactic Medium Enrichment from Galactic Outflows
- Strangulation as the primary mechanism for shutting down star formation in galaxies
- The COS-Halos Survey: Physical Conditions and Baryonic Mass in the Low-Redshift Circumgalactic Medium
- Massive molecular outflows and negative feedback in ULIRGs observed by Herschel-PACS
- Riding the Spiral Waves: Implications of Stellar Migration for the Properties of Galactic Disks
- The Atlas3D Project - XXX. Star formation histories and stellar population scaling relations of early-type galaxies
- Ages and metallicities of early-type galaxies in the SDSS: new insight into the physical origin of the colour-magnitude and the Mg2-sigmaV relations
- The Discovery of 1000 km/s Outflows in Massive Post-starburst Galaxies at z=0.6
- Feedback and metal enrichment in cosmological SPH simulations - II. A multiphase model with supernova energy feedback
- Ionized gas outflows and global kinematics of low-z luminous star forming galaxies
- Deriving model-based T-consistent chemical abundances in ionised gaseous nebulae
- Very extended cold gas, star formation and outflows in the halo of a bright QSO at z>6
- A Model for Star Formation, Gas Flows and Chemical Evolution in Galaxies at High Redshifts
- IZI: Inferring the Gas Phase Metallicity (Z) and Ionization Parameter (q) of Ionized Nebulae using Bayesian Statistics
- The oxygen abundance in the inner HII regions of M101. Implications for the calibration of strong-line metallicity indicators
- Mapping Large-Scale Gaseous Outflows in Ultraluminous Infrared Galaxies with Keck II ESI Spectra: Spatial Extent of the Outflow
- P-MaNGA: Emission Lines Properties - Gas Ionisation and Chemical Abundances from Prototype Observations
- The missing metals problem. III How many metals are expelled from galaxies?
- P-MaNGA: Full spectral fitting and stellar population maps from prototype observations
- Hydrodynamical simulations of Galactic fountains I: evolution of single fountains
- Spatially resolved kinematics, galactic wind, and quenching of star formation in the luminous infrared galaxy IRAS F11506-3851
- Discrepancies between the [OIII] and [SIII] Temperatures in HII Regions
- Diffuse gas properties and stellar metallicities in cosmological simulations of disc galaxy formation
- An analytical model for galaxy metallicity: What do metallicity relations tell us about star formation and outflow?
- The origin of abundance gradients in the Milky Way: the predictions of different models
Cited by in corpus (32)
- De Re Metallica: The cosmic chemical evolution of galaxies
- SDSS IV MaNGA - Metallicity and nitrogen abundance gradients in local galaxies
- The Data Analysis Pipeline for the SDSS-IV MaNGA IFU Galaxy Survey: Emission-Line Modeling
- Spatially-Resolved Spectroscopic Properties of Low-Redshift Star-Forming Galaxies
- The Mass-Metallicity Relation revisited with CALIFA
- Nitrogen and oxygen abundances in the Local Universe
- Equilibrium and Sudden Events in Chemical Evolution
- The SAMI Galaxy Survey: Exploring the gas-phase Mass-Metallicity Relation
- SDSS IV MaNGA - An archaeological view of the Cosmic Star Formation History
- From 'bathtub' galaxy evolution models to metallicity gradients
- SDSS-IV MaNGA: Modelling the metallicity gradients of gas and stars - radially dependent metal outflow vs IMF
- Metals and dust content across the galaxies M101 and NGC 628
- Evolution of the chemical enrichment and the Mass-Metallicity relation in CALIFA galaxies
- Spatially Resolved Metal Loss from M31
- Physical Properties of Massive Compact Starburst Galaxies with Extreme Outflows
- Cosmological evolution of the Nitrogen abundance
- The Cosmic Evolution of Magnesium Isotopes
- A Local Leaky-box Model for the Local Stellar Surface Density - Gas Surface Density - Gas Phase Metallicity Relation
- SPICA and the Chemical Evolution of Galaxies: The Rise of Metals and Dust
- Metallicities in the Outer Regions of Spiral Galaxies
- The multiphase starburst-driven galactic wind in NGC 5394
- The Local Star Formation Rate Surface Density And Metallicity Relation For Star-forming Galaxies
- Breaking the degeneracy between gas inflow and outflows with stellar metallicity: Insights on M101
- Serendipitous discovery of a strong-lensed galaxy in integral field spectroscopy from MUSE
- Multi-line assessment of narrow-line regions in 3 radio galaxies
- Machine learning the gap between real and simulated nebulae: A domain-adaptation approach to classify ionised nebulae in nearby galaxies
- Oxygen Loss from Simulated Galaxies and the Metal Flow Main Sequence: Predicting the Dependence on Mass and Environment
- The inflow and outflow rate evolution of local Milky Way-mass star-forming galaxies since z=1.3
- Star Formation in CALIFA survey perturbed galaxies. II. Star Formation Histories and Oxygen Abundances
- On conditios of high figure of merit and methods of search for promising superlattice thermoelectric materials
- M31 nucleus: molecular and ionised gas content upper limits
- MUSE Study of Two Giant Low-surface-brightness Galaxies with Compact Satellites